CN212019696U - A unloading platform for numerical control flame cutting machine - Google Patents

A unloading platform for numerical control flame cutting machine Download PDF

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Publication number
CN212019696U
CN212019696U CN202020334776.8U CN202020334776U CN212019696U CN 212019696 U CN212019696 U CN 212019696U CN 202020334776 U CN202020334776 U CN 202020334776U CN 212019696 U CN212019696 U CN 212019696U
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China
Prior art keywords
rectangular frame
numerical control
cutting machine
platform
flame cutting
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CN202020334776.8U
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Chinese (zh)
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咸耀龙
咸丁蓉
高爽
刘沅桦
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Shanxi Yangmei Chemical Industry Machinery Group Co Ltd
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Shanxi Yangmei Chemical Industry Machinery Group Co Ltd
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Abstract

The utility model belongs to the technical field of the platform bearing structure, specifically be a unloading platform for numerical control flame cutting machine, the technical problem in the background art has been solved, it includes rectangular frame, the welding has the supporting leg on four angles of rectangular frame downside, the bottom plate has all been welded to the lower extreme of supporting leg, the bottom plate passes through rag bolt and ground fixed connection, interval arrangement has several and rectangular frame place plane vertically support gusset on the rectangular frame, the both sides face at support gusset both ends all is provided with welds mutually with rectangular frame, be parallel with support gusset and be less than the spacing gusset of support gusset. The utility model provides a long-time unloading back of numerical control flame cutting machine, unloading platform yielding, cut the difficult clearance of sediment, hoist and mount panel platform and easily appear the technical problem of skew, its simple structure, maneuverability is strong, reduces intensity of labour, has improved work efficiency, has reduced manufacturing cost simultaneously, has shortened advantages such as the preparation cycle of equipment.

Description

A unloading platform for numerical control flame cutting machine
Technical Field
The utility model belongs to the technical field of the platform bearing structure, specifically be a unloading platform for numerical control flame cutting machine.
Background
In the field of pressure vessel manufacturing, all parts of equipment need to be blanked, and the requirements of mass equipment production cannot be met by traditional manual gas cutting blanking and semi-automatic gas cutting blanking, so that the blanking performed by adopting a numerical control flame cutting machine becomes a main means for blanking of pressure vessel manufacturing enterprises. In the long-term unloading process, a plurality of problems of unloading of the numerical control cutting machine are also needed to be solved, such as: the long-time work has large damage to the blanking support platform, serious deformation and difficult replacement; cutting slag generated by mass blanking is difficult to clean; in the process of placing the plate on the platform, the position of the platform is easy to deviate; the parts with small sizes are easy to fall into the lower part of the platform after being discharged and are not easy to take out. The above problems become main factors restricting the blanking efficiency, so that the manufacturing period of the equipment is prolonged, and the manufacturing cost of the equipment is increased virtually. Therefore, designing a supporting platform for the blanking of the numerical control flame cutting machine becomes a key for improving the manufacturing efficiency of parts.
Disclosure of Invention
The utility model discloses aim at solving the long-time unloading back of numerical control flame cutting machine, the skew easily appears in unloading platform yielding, the difficult clearance of cutting sediment, hoist and mount panel platform, causes work efficiency low, manufacturing cost's technical problem, provides an unloading platform for numerical control flame cutting machine, through the utility model discloses effectually solve above-mentioned technical problem, improved work efficiency, reduced manufacturing cost.
The utility model provides a technical means that its technical problem adopted is: the utility model provides an unloading platform for numerical control flame cutting machine, includes rectangular frame, the welding has the supporting leg on four angles of rectangular frame downside, and the bottom plate has all been welded to the lower extreme of all supporting legs, the bottom plate passes through rag bolt and ground fixed connection, and interval arrangement has several and rectangular frame place plane vertically support rib plate on the rectangular frame, the both sides face at support rib plate both ends all is provided with the rectangular frame and welds, is parallel to and is less than the spacing gusset of support rib plate mutually with the support rib plate. The rectangular frame, the supporting legs and the bottom plate form a main body structure of the blanking platform together, and the blanking platform is fixed in a foundation through foundation bolts, so that the problem of platform deviation during hoisting and placing of plates is solved; spacing gusset and rectangular frame welding, and the brace gusset is higher than spacing gusset, long-time unloading of numerical control flame cutting machine just can cause the damage to connecting the gusset so, can not harm other parts of platform, has effectively protected the unloading platform, and the brace gusset not weld only insert between spacing gusset to the brace gusset that damages is convenient to be changed at any time. The cutting slag in the blanking process can fall below the platform through the gaps between the supporting rib plates, and parts with smaller sizes can be left on the platform and are not easy to fall; when the slag cutting accumulation below the platform is more and needs to be cleaned, the supporting rib plate can be cleaned after being detached, and the cleaning is simple and rapid. The working efficiency is greatly improved, the production cost is reduced, and the manufacturing period of subsequent equipment is shortened.
The utility model has the advantages that: the numerical control flame cutting machine has the advantages of being low in manufacturing cost, solving the technical problems that after the numerical control flame cutting machine performs long-time blanking, the blanking platform is easy to deform, the cutting slag is difficult to clean, and the hoisting plate platform is easy to deviate.
Drawings
Fig. 1 is a schematic front structural view of a blanking platform for a numerical control flame cutting machine according to the present invention.
Fig. 2 is a schematic side structure diagram of a blanking platform for a numerical control flame cutting machine according to the present invention.
Fig. 3 is a schematic view of the use of the blanking platform for the numerical control flame cutting machine of the present invention.
In the figure: 1-a rectangular frame; 2-supporting legs; 3-a bottom plate; 4-supporting the rib plate; and 5, limiting rib plates.
Detailed Description
The blanking platform for the numerical control flame cutting machine of the present invention is described in detail with reference to fig. 1, 2 and 3.
The utility model provides a unloading platform for numerical control flame cutting machine, as shown in fig. 1 and fig. 2, includes rectangular frame 1, the welding has supporting leg 2 on four angles of rectangular frame 1 downside, and bottom plate 3 has all been welded to the lower extreme of all supporting legs 2, bottom plate 3 passes through rag bolt and ground fixed connection, and rectangular frame 1 goes up interval arrangement has several and rectangular frame 1 place plane vertically support gusset 4, the both sides face at support gusset 4 both ends all is provided with 1 looks welding of rectangular frame, parallels and is less than the spacing gusset 5 of support gusset 4 with support gusset 4. The rectangular frame 1, the supporting legs 2 and the bottom plate 3 jointly form a main body structure of the blanking platform, and the main body structure is fixed in a foundation through foundation bolts, so that the problem of platform deviation during lifting and placing of plates is solved; spacing gusset 5 and rectangular frame 1 welding, and support gusset 4 is higher than spacing gusset 5, and long-time unloading of numerical control flame cutting machine just can cause the damage to support gusset 4 so, can not harm other parts of platform, has effectively protected the unloading platform, and support gusset 4 not weld only insert between spacing gusset 5 to the support gusset 4 of damage is conveniently changed at any time. The cutting slag in the blanking process can fall below the platform through the gaps between the support rib plates 4, and parts with smaller sizes can be left on the platform and are not easy to fall; when the slag cutting accumulation below the platform is more and needs to be cleaned, the supporting rib plates 4 can be removed and cleaned simply and quickly. The working efficiency is greatly improved, the production cost is reduced, and the manufacturing period of subsequent equipment is shortened.
Further, as a specific implementation manner of the blanking platform for the numerical control flame cutting machine of the present invention, as shown in fig. 1, the adjacent support rib plates 4 are parallel to each other. Therefore, the structure is more reasonable and the manufacture is convenient.
Further, as a specific implementation mode of a unloading platform for numerical control flame cutting machine, as shown in fig. 1 and fig. 2, support rib plate 4 is parallel with rectangular frame 1's minor face, spacing rib plate 5 welds on rectangular frame 1's long limit. In specific implementation, the length of the support rib plate 4 is equal to that of the short side of the rectangular frame body 1, the limit rib plates 5 are welded on the long side of the rectangular frame body 1, two ends of the support rib plate 4 are clamped between the limit rib plates 5 on the long side of the rectangular frame body 1, and the whole platform is reasonable in structure.
Further, as a specific implementation mode of a unloading platform for numerical control flame cutting machine, as shown in fig. 1 and 2, the mid point department welding on the long limit of rectangular frame 1 has supporting leg 2. The supporting legs 2 are added to improve the bearing capacity of the platform, and the supporting legs 2 are stressed uniformly.
Further, as a specific implementation of a blanking platform for numerical control flame cutting machine, as shown in fig. 1 and 2, rectangular frame 1 and supporting leg 2 are made by the channel-section steel. The channel steel section is the flute profile, and mechanical function is good, and the section modulus is big, and the weight is light, and convenient for acquireing, rectangular frame 1 and supporting leg 2 that form by the channel steel welding sound construction. In a specific embodiment, the supporting leg 2 can also be formed by buckling and welding two channel steels, so that the supporting leg 2 made in the way has stronger bearing capacity.
Further, as a specific embodiment for a unloading platform of numerical control flame cutting machine, 4 intervals of adjacent support rib plate are 100mm ~120mm, the clearance between two spacing rib plates 5 is 1mm ~2mm than support rib plate 4 thickness is big, support rib plate 4 height is 150 mm. The gap between the two limiting rib plates 5 is 1 mm-2 mm larger than the thickness of the supporting rib plate 4 so as to ensure that the supporting rib plate 4 can be smoothly inserted between the limiting rib plates 5. The distance between the adjacent support rib plates is just proper, namely 100 mm-120 mm, so that the cutting slag in the blanking process can smoothly drop to the lower part of the platform through the gap, and parts with small sizes can be left on the platform and are not easy to drop.
When the blanking device is used specifically, in order to increase the area of the blanking platform, the two tools can be spliced together for use, and as shown in fig. 3, the length of the supporting rib plate 4 is equal to twice of the short side of the rectangular frame 1.
While the invention has been particularly shown and described with reference to the preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (7)

1. The utility model provides a unloading platform for numerical control flame cutting machine, a serial communication port, including rectangular frame (1), the welding has supporting leg (2) on four angles of rectangular frame (1) downside, and bottom plate (3) through rag bolt and ground fixed connection are all welded to the lower extreme of all supporting leg (2), and rectangular frame (1) is gone up interval arrangement has several and rectangular frame (1) place plane vertically support gusset (4), the both sides face at support gusset (4) both ends all is provided with welds mutually with rectangular frame (1), parallels and is less than spacing gusset (5) of support gusset (4) with support gusset (4).
2. The blanking platform for the numerical control flame cutting machine according to claim 1, characterized in that adjacent support webs (4) are parallel to each other.
3. The blanking platform for the numerical control flame cutting machine according to the claim 2, characterized in that the support rib plate (4) is parallel to the short side of the rectangular frame (1), and the limit rib plate (5) is welded on the long side of the rectangular frame (1).
4. The blanking platform for the numerical control flame cutting machine according to any one of the claims 1 to 3, characterized in that the supporting leg (2) is welded at the midpoint of the long side of the rectangular frame (1).
5. The blanking platform for a numerical control torch cutting machine according to claim 4, characterized in that the rectangular frame (1) and the support legs (2) are made of channel steel.
6. The blanking platform for the numerical control flame cutting machine according to claim 5, characterized in that the distance between adjacent support rib plates (4) is 100 mm-120 mm.
7. The blanking platform for the numerical control flame cutting machine according to claim 6, wherein the gap between the two limiting rib plates (5) is 1 mm-2 mm larger than the thickness of the supporting rib plate (4), and the height of the supporting rib plate (4) is 150 mm.
CN202020334776.8U 2020-03-17 2020-03-17 A unloading platform for numerical control flame cutting machine Active CN212019696U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020334776.8U CN212019696U (en) 2020-03-17 2020-03-17 A unloading platform for numerical control flame cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020334776.8U CN212019696U (en) 2020-03-17 2020-03-17 A unloading platform for numerical control flame cutting machine

Publications (1)

Publication Number Publication Date
CN212019696U true CN212019696U (en) 2020-11-27

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Application Number Title Priority Date Filing Date
CN202020334776.8U Active CN212019696U (en) 2020-03-17 2020-03-17 A unloading platform for numerical control flame cutting machine

Country Status (1)

Country Link
CN (1) CN212019696U (en)

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